bc16ca4d51
dart::Thread object representing Isolate's mutator can be reclaimed when thread is suspended, so we need to preserve thread_locals on Isolate itself. TEST=vm/dart/thread_local_test Fixes https://github.com/dart-lang/sdk/issues/63408 Change-Id: I7502b9bc67a07fb2e82479d3052740516a6a6964 Reviewed-on: https://dart-review.googlesource.com/c/sdk/+/504921 Commit-Queue: Slava Egorov <vegorov@google.com> Reviewed-by: Martin Kustermann <kustermann@google.com>
189 lines
5.3 KiB
C++
189 lines
5.3 KiB
C++
// Copyright (c) 2015, the Dart project authors. Please see the AUTHORS file
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// for details. All rights reserved. Use of this source code is governed by a
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// BSD-style license that can be found in the LICENSE file.
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#include "vm/thread_registry.h"
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#include "vm/json_stream.h"
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#include "vm/lockers.h"
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namespace dart {
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ThreadRegistry::~ThreadRegistry() {
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// Go over the free thread list and delete the thread objects.
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{
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MonitorLocker ml(threads_lock());
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// At this point the active list should be empty.
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ASSERT(active_list_ == nullptr);
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// Now delete all the threads in the free list.
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while (free_list_ != nullptr) {
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Thread* thread = free_list_;
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free_list_ = thread->next_;
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delete thread;
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}
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}
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}
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Thread* ThreadRegistry::GetFreeThreadLocked(bool is_bootstrapping) {
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ASSERT(threads_lock()->IsOwnedByCurrentThread());
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Thread* thread = GetFromFreelistLocked(is_bootstrapping);
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ASSERT(thread->api_top_scope() == nullptr);
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// Now add this Thread to the active list for the isolate.
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AddToActiveListLocked(thread);
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return thread;
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}
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void ThreadRegistry::ReturnThreadLocked(Thread* thread) {
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ASSERT(threads_lock()->IsOwnedByCurrentThread());
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// Remove thread from the active list for the isolate.
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RemoveFromActiveListLocked(thread);
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ReturnToFreelistLocked(thread);
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}
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void ThreadRegistry::VisitObjectPointers(
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IsolateGroup* isolate_group_of_interest,
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ObjectPointerVisitor* visitor,
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ValidationPolicy validate_frames) {
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MonitorLocker ml(threads_lock());
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Thread* thread = active_list_;
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while (thread != nullptr) {
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if (thread->isolate_group() == isolate_group_of_interest) {
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// The mutator thread with isolate is visited by the isolate itself (see
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// [IsolateGroup::VisitStackPointers]).
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// All other threads are visited here.
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if (thread->scheduled_dart_mutator_isolate() == nullptr) {
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thread->VisitObjectPointers(visitor, validate_frames);
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}
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}
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thread = thread->next_;
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}
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}
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void ThreadRegistry::ForEachThread(
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std::function<void(Thread* thread)> callback) {
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MonitorLocker ml(threads_lock());
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Thread* thread = active_list_;
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while (thread != nullptr) {
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callback(thread);
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thread = thread->next_;
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}
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}
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void ThreadRegistry::ReleaseStoreBuffers() {
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MonitorLocker ml(threads_lock());
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Thread* thread = active_list_;
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while (thread != nullptr) {
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if (!thread->BypassSafepoints()) {
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thread->ReleaseStoreBuffer();
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}
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thread = thread->next_;
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}
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}
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void ThreadRegistry::AcquireMarkingStacks() {
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MonitorLocker ml(threads_lock());
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Thread* thread = active_list_;
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while (thread != nullptr) {
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if (!thread->BypassSafepoints()) {
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thread->AcquireMarkingStacks();
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}
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thread = thread->next_;
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}
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}
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void ThreadRegistry::ReleaseMarkingStacks() {
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MonitorLocker ml(threads_lock());
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Thread* thread = active_list_;
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while (thread != nullptr) {
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if (!thread->BypassSafepoints()) {
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thread->ReleaseMarkingStacks();
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ASSERT(!thread->is_marking());
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}
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thread = thread->next_;
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}
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}
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void ThreadRegistry::FlushMarkingStacks() {
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MonitorLocker ml(threads_lock());
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Thread* thread = active_list_;
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while (thread != nullptr) {
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if (!thread->BypassSafepoints() && thread->is_marking()) {
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thread->FlushMarkingStacks();
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ASSERT(thread->is_marking());
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}
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thread = thread->next_;
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}
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}
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intptr_t ThreadRegistry::StealActiveMutators(ThreadPool* pool) {
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MonitorLocker ml(threads_lock());
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intptr_t count = 0;
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Thread* thread = active_list_;
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while (thread != nullptr) {
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if (thread->TryStealActiveMutator()) {
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pool->MarkWorkerAsBlocked(thread->os_thread());
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count++;
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}
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thread = thread->next_;
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}
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return count;
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}
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void ThreadRegistry::AddToActiveListLocked(Thread* thread) {
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ASSERT(thread != nullptr);
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ASSERT(threads_lock()->IsOwnedByCurrentThread());
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thread->next_ = active_list_;
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active_list_ = thread;
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active_isolates_count_.fetch_add(1);
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}
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void ThreadRegistry::RemoveFromActiveListLocked(Thread* thread) {
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ASSERT(thread != nullptr);
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ASSERT(threads_lock()->IsOwnedByCurrentThread());
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Thread* prev = nullptr;
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Thread* current = active_list_;
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while (current != nullptr) {
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if (current == thread) {
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if (prev == nullptr) {
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active_list_ = current->next_;
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} else {
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prev->next_ = current->next_;
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}
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active_isolates_count_.fetch_sub(1);
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break;
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}
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prev = current;
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current = current->next_;
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}
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}
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Thread* ThreadRegistry::GetFromFreelistLocked(bool is_bootstrapping) {
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ASSERT(threads_lock()->IsOwnedByCurrentThread());
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Thread* thread = nullptr;
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// Get thread structure from free list or create a new one.
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if (free_list_ == nullptr) {
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thread = new Thread(is_bootstrapping);
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} else {
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thread = free_list_;
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free_list_ = thread->next_;
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}
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return thread;
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}
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void ThreadRegistry::ReturnToFreelistLocked(Thread* thread) {
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ASSERT(thread != nullptr);
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ASSERT(thread->os_thread() == nullptr);
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ASSERT(thread->isolate_ == nullptr);
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ASSERT(thread->isolate_group_ == nullptr);
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ASSERT(thread->field_table_values_ == nullptr);
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ASSERT(thread->shared_field_table_values_ == nullptr);
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ASSERT(thread->thread_locals_ == Array::null());
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ASSERT(threads_lock()->IsOwnedByCurrentThread());
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// Add thread to the free list.
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thread->next_ = free_list_;
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free_list_ = thread;
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}
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} // namespace dart
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